SYSTEM ANALYZER

Rate My PC: Intel Core i5-14400F + Intel Arc B580

Get a comprehensive performance analysis of your gaming rig with detailed benchmarks, bottleneck detection, and upgrade recommendations

91 / 100
ULTIMATE READY

Apex Performer

Top 9% of systems. Capable of 4K Ultra gaming and advanced rendering.

4K 60+ FPSVR ReadyRay Tracing

System Balance Analysis

CPU vs GPU performance ratio
Well Balanced
CPU
90%
VS
GPU
92%
PROCESSOR

Intel Core i5-14400F

32,279 Benchmark Score
Top 10% Market Ranking
View Full Specs →
GRAPHICS CARD

Intel Arc B580

23,021 Benchmark Score
Top 8% Market Ranking
View Full Specs →

Market Position

How your build compares to others
Budget
0-30
Mid-Range
30-60
High-End
60-85
Enthusiast
85-100
Your Build

Game Performance Benchmarks

Real-world 4K FPS in popular titles
View All Games →

Performance Insights

Tips to maximize your system

Optimal Performance

Your system is in the top tier. You can run any modern game at maximum settings.

4K Gaming Ready

Consider a 4K 144Hz monitor to fully utilize your hardware capabilities.

Compatible Games See what you can play Compare CPUs Find upgrades Compare GPUs Find upgrades

Performance Tiers Explained

90-100

Ultimate

4K Ultra gaming, VR ready, ray tracing enabled, professional workloads

4K 60+ FPS VR Ready
70-89

High-End

1440p Ultra or 4K High settings, excellent for modern AAA titles

1440p Ultra 4K High
50-69

Mid-Range

1080p Ultra or 1440p Medium, great value for most gamers

1080p Ultra 1440p Med
30-49

Entry Level

1080p Medium settings, suitable for eSports and older titles

1080p Med eSports
0-29

Legacy

Basic gaming, older titles, consider upgrading for modern games

720p-1080p Low Older Games

The Intel Core i5-14400F and Intel Arc B580 form a desktop pairing that targets the mid-range segment with a focus on modern features and balanced performance. The CPU, a Raptor Lake Refresh part, provides a robust foundation for gaming and productivity, while the GPU, based on Intel’s new Battlemage architecture, delivers competitive rasterization and advanced ray tracing capabilities. This analysis dissects their individual strengths and combined behavior based strictly on measured benchmark data.

CPU Analysis

The Intel Core i5-14400F is a 10-core, 16-thread processor built on the Raptor Lake architecture and fabricated on Intel's 10 nm process node. Its configuration combines performance and efficiency cores, with a base clock of 2.50 GHz and a boost clock of 4.70 GHz. The chip has a 65 W TDP and supports both DDR4 and DDR5 memory in a dual-channel configuration, along with ECC memory, making it versatile for various system builds. It features 20 MB of shared L3 cache and 1.25 MB of L2 cache per core.

Benchmark results place this CPU in the 83rd percentile of all processors, indicating strong overall performance. In Cinebench R23, it scores 21,645 points in multi-core and 3,055 points in single-core tests. The multi-core score is particularly telling for productivity, as it shows the chip can handle heavily threaded workloads like video encoding and 3D rendering. The single-core score of 3,055 is equally important for gaming and everyday responsiveness, where per-thread performance often dictates frame pacing.

Geekbench results echo this balance, with a multi-core score of 11,268 and a single-core score of 2,058. The CPU's average benchmark score of 32,279 places it in close competition with several notable rivals. It trails the AMD Ryzen 7 PRO 8840U by a negligible 0.1% and the Intel Core i9-11900 by 0.2%, while it leads the AMD Ryzen 7 6800HS by 0.2% and the Intel Core i7-12800H by 0.5%. This suggests the i5-14400F sits in a performance band where generational and architectural differences are minimal, making it a reliable choice for a wide range of tasks.

The Passmark suite provides further granularity on workload-specific abilities. The processor scores 81,524 in integer math and 61,319 in floating-point math, indicating solid number-crunching capability. Data encryption and compression scores of 16,949 and 315,521, respectively, show it handles archival and security tasks efficiently. The multi-thread score of 25,470 reinforces its capability in parallel workloads, while the single-thread score of 3,701 confirms its strength in lightly threaded applications. These figures collectively paint a picture of a CPU that is neither a niche specialist nor a bottleneck for most mainstream uses.

Benchmark Performance

The GPU component, the Intel Arc B580, achieves an average benchmark score of 23,021, placing it in the 68th percentile of all GPUs. This score positions it as a competent mid-range performer, with its nearest rivals being the AMD Radeon RX 580 2048SP (0.2% slower), NVIDIA GeForce RTX 2080 (0.6% faster), NVIDIA GeForce RTX 3080 (0.7% slower), and NVIDIA P106-100 (1% slower). The tight clustering of these scores suggests the B580 competes with older high-end cards and newer mid-range options, offering performance that is highly dependent on the specific workload.

In synthetic tests, the GPU scores 3,068 in 3DMark Steel Nomad (DX12), 92,821 in Geekbench OpenCL, and 109,672 in Geekbench Vulkan. The Vulkan score exceeding the OpenCL score by over 18% indicates strong low-level API performance, which is beneficial for modern game engines. The Passmark G3D score of 15,748 and GPU compute score of 7,729 further quantify its rendering and compute abilities. The combined CPU and GPU pairing yields a combined percentile of 76, indicating a well-matched system overall.

The pair's measured FPS across a broad game library averages 99.8 frames per second, earning a rank of 2,763 out of 3,732 pairs. This average, while respectable, is skewed by lighter titles. For instance, the system achieves 338.7 FPS in Valorant at 1080p, but drops to 41.4 FPS in Cyberpunk 2077 at the same resolution. This variance highlights that the system excels in esports and older titles, while it must rely on settings adjustments or upscaling for demanding AAA games. The data shows a capable pairing, but one that is not universally dominant across all game types.

Usage Scenarios

For high-refresh gaming, this system is a strong contender in competitive titles. The data shows it can push 146.9 FPS in Counter-Strike 2 and 178 FPS in Tom Clancy’s Rainbow Six Siege at 1080p, comfortably exceeding the 144Hz threshold. At 1440p, it maintains 96.4 FPS in Counter-Strike 2 and 117 FPS in Rainbow Six Siege, which remains playable for high-refresh monitors, though not always at maximum refresh rates.

Streaming and content creation benefit from the CPU's multi-core strength. The i5-14400F's Cinebench R23 multi-core score of 21,645 ensures that encoding video while gaming will not cause significant frame drops. The GPU's compute score of 7,729 in Passmark also helps with video effects and rendering tasks, making the system suitable for a single-PC streaming setup where the CPU handles the encode load.

Video editing and 3D rendering are areas where this build shows its productivity chops. The CPU's Geekbench multi-core score of 11,268 and the GPU's 13.67 TFLOPS of FP32 performance mean that timeline scrubbing and final renders in applications like Premiere Pro or Blender will be reasonably swift. The 12 GB of VRAM on the GPU is also beneficial for larger textures and scenes, reducing the need to rely on system memory.

Software development is a comfortable fit for this pair. The CPU's Passmark data compression score of 315,521 accelerates code compilation and version control operations, while the 16 threads allow for parallel builds. The single-core performance, evidenced by a Geekbench score of 2,058, ensures that IDE responsiveness and code analysis tools run without lag.

For student and office work, this system is overkill in the best way. The CPU's single-thread performance ensures snappy application launches and spreadsheet calculations, while the GPU can handle any light photo or video editing tasks. The efficiency of the 65 W CPU also means that the system will not generate excessive heat or noise during long study sessions, making it a quiet and capable workstation.

Balance and Bottleneck

The benchmark data reveals a nuanced balance between the CPU and GPU. In CPU-intensive scenarios, the i5-14400F's 83rd percentile ranking means it is rarely the limiting factor. However, in extreme cases like Ark: Survival Ascended, the system manages only 19.6 FPS at 1080p, a figure that suggests the GPU is overwhelmed by the game's demands rather than the CPU. The GPU's 68th percentile ranking, combined with its nearest rivals including the RTX 3080, indicates it is the primary constraint in modern, graphically heavy titles.

Conversely, the GPU can be the bottleneck in less demanding games, but the CPU is more than capable of feeding it frames. In Valorant at 1080p, the system hits 338.7 FPS, which is likely a CPU or game engine limit, but the score shows the CPU can push very high frame rates. The FPS scaling from 1080p to 1440p in games like Call of Duty: Warzone (146.6 to 128.4 FPS) shows a 12% drop, which is modest and indicates that the GPU is still the main driver in this title.

The data suggests that the i5-14400F provides a solid platform for the Arc B580, with no significant pairing inefficiencies. In games like Red Dead Redemption 2, the system achieves 40 FPS at 1080p and 30 FPS at 1440p. The 25% drop from 1080p to 1440p is substantial, but it reflects the GPU's performance ceiling rather than a CPU limitation. Overall, the CPU has enough headroom to support a future GPU upgrade, while the GPU is the current performance limiter in most graphically intensive scenarios.

Who Should Build It

This build is ideal for gamers who prioritize high frame rates in competitive shooters and are willing to compromise on settings for demanding AAA titles. The measured 146.9 FPS in Counter-Strike 2 and 338.7 FPS in Valorant at 1080p make it a fantastic choice for esports enthusiasts. For those gaming at 1440p, the system still delivers playable frame rates in many titles, such as 128.4 FPS in Call of Duty: Warzone, but will require reduced settings for games like Cyberpunk 2077.

Content creators who work with video and 3D rendering will find the CPU's multi-core performance valuable. The Cinebench R23 multi-core score of 21,645 indicates it can handle rendering tasks efficiently, while the GPU's 12 GB VRAM and compute capabilities assist with GPU-accelerated effects. This makes it a suitable budget-friendly option for indie developers or hobbyist creators.

Software developers will appreciate the system's compilation speed and responsiveness. The high Passmark integer math score of 81,524 and the multi-thread score of 25,470 ensure that large codebases build quickly. The support for ECC memory, as listed in the CPU specs, also provides an option for developers who require data integrity during long computation tasks.

Students and small business workstations will benefit from the system's versatility. The CPU's single-core performance in Geekbench (2,058) ensures a fluid desktop experience, while the GPU can handle presentation graphics and light design work. The system's 65 W CPU TDP means it can be built in a compact case with a capable air cooler, making it a practical choice for dorm rooms or small offices.

FAQ

Q: What is the CPU's core and thread count?

A: The Intel Core i5-14400F has 10 cores and 16 threads, which is a hybrid configuration of performance and efficiency cores.

Q: What are the GPU's memory specifications?

A: The Intel Arc B580 features 12 GB of GDDR6 memory on a 192-bit bus, providing a bandwidth of 456.0 GB/s.

Q: How does the CPU compare to its nearest rival, the AMD Ryzen 7 PRO 8840U?

A: The i5-14400F has an average benchmark score of 32,279, which is 0.1% higher than the AMD Ryzen 7 PRO 8840U's score of 32,233.

Q: What is the GPU's performance percentile?

A: The Intel Arc B580 ranks in the 68th percentile of all GPUs based on its average benchmark score.

Q: Does the system support ray tracing?

A: Yes, the GPU has 20 dedicated ray tracing cores and supports DirectX 12 Ultimate, which includes ray tracing features.

Q: What is the average FPS across all measured games?

A: The system achieves an average of 99.8 FPS across the games in the dataset.

Q: Is the CPU overclockable?

A: No, the multiplier is locked, so the Intel Core i5-14400F does not support overclocking.

GPU Analysis

The Intel Arc B580 is a desktop GPU built on the Xe2-HPG architecture, codenamed Battlemage, and fabricated on TSMC's 5 nm process. It houses 19,600 million transistors on a 272 mm² die, with a transistor density of 72.1M per mm². The GPU operates at a base and boost clock of 2670 MHz, with memory clocked at 2375 MHz for 19 Gbps effective speed. It features 2,560 shading units, 160 TMUs, and 80 ROPs, alongside 20 ray tracing cores.

Memory bandwidth is a standout feature, with 12 GB of GDDR6 on a 192-bit bus providing 456.0 GB/s of throughput. This is a critical specification for modern games that demand high texture detail and for compute workloads that require large data sets. The GPU's pixel rate is 213.6 GPixel/s and its texture rate is 427.2 GTexel/s, indicating robust fill rates for its class. Its FP32 performance of 13.67 TFLOPS and FP16 performance of 27.34 TFLOPS (2:1) position it as a capable compute device for AI-adjacent tasks and high-dynamic-range rendering.

In benchmark results, the GPU's 3DMark Steel Nomad score of 3,068 and Geekbench Vulkan score of 109,672 demonstrate strong modern API performance. The Vulkan score is particularly high, suggesting excellent low-level optimization, which translates to good performance in Vulkan-based games. The Passmark G3D score of 15,748 and GPU compute score of 7,729 quantify its rasterization and general-purpose compute capabilities. With a TDP of 190 W and a required 450 W PSU, it is a power-hungry card, but its dual-slot design and single 8-pin connector make it relatively easy to install in standard cases.

Build Overview

This pairing consists of a desktop-class Intel Core i5-14400F CPU and an Intel Arc B580 GPU. The CPU is a Raptor Lake Refresh part with 10 cores and 16 threads, while the GPU is a Battlemage architecture card with 12 GB of VRAM. The combined system ranks in the 76th percentile of all CPU-GPU pairs, indicating it offers above-average performance for a desktop build. The CPU's 83rd percentile ranking and the GPU's 68th percentile ranking show that the CPU is the stronger component relative to its peers.

The build is designed for a mid-range desktop, targeting users who need a balance of productivity and gaming. The CPU's support for DDR4 and DDR5 memory allows for flexible system configurations, while the GPU's modern feature set, including DirectX 12 Ultimate and ray tracing, ensures compatibility with contemporary game titles. The overall tier is solidly mid-range, with the CPU providing a strong foundation and the GPU offering competitive performance in its class.

Gaming Performance

Measured gaming performance shows a system that excels in lighter and competitive titles but struggles with the most demanding AAA games at high resolutions. At 1080p, the system delivers excellent frame rates in esports titles: 338.7 FPS in Valorant, 332 FPS in Counter-Strike: Global Offensive, and 180.1 FPS in Tom Clancy's Rainbow Six Siege X. These figures are well above the 144Hz mark, making it ideal for high-refresh monitors.

For triple-A games at 1080p, performance varies. Call of Duty: Warzone runs at 146.6 FPS, which is excellent, but Cyberpunk 2077 only manages 41.4 FPS, indicating that ultra settings are not viable for the most demanding titles. Red Dead Redemption 2 achieves 40 FPS, and Ark: Survival Ascended drops to 19.6 FPS, showing these games require significant settings reductions. At 1440p, the system still provides playable performance in many titles, with 128.4 FPS in Warzone and 96.4 FPS in Counter-Strike 2, but AAA games like Cyberpunk 2077 (34.1 FPS) and Red Dead Redemption 2 (30 FPS) fall below the 60 FPS target.

At 4K, the system is primarily suited for less demanding games. Roblox achieves 75.1 FPS, and Minecraft runs at 49 FPS, but most modern titles dip below 30 FPS, such as Cyberpunk 2077 at 22 FPS and Red Dead Redemption 2 at 20 FPS. The data indicates that this build is best suited for 1080p and 1440p gaming, where it can deliver high refresh rates in competitive titles and acceptable frame rates in most single-player games, provided settings are adjusted accordingly.